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Numerical simulation of tuned liquid tank-structure systems through sigma-transformation based fluid-structure coupled solver

机译:基于基于sigma变换的流固耦合求解器的调谐液箱结构系统的数值模拟

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Wind-induced and earthquake-induced excitations on tall structures can be effectively controlled by Tuned Liquid Damper (TLD). This work presents a numerical simulation procedure to study the performance of tuned liquid tank-structure system through sigma-transformation based fluid-structure coupled solver. For this, a 'C' based computational code is developed. Structural equations are coupled with fluid equations in order to achieve the transfer of sloshing forces to structure for damping. Structural equations are solved by fourth order Runge-Kutta method while fluid equations are solved using fmite difference based sigma transformed algorithm. Code is validated with previously published results. The minimum displacement of structure is observed when the resonance condition of the coupled system is satisfied through proper tuning of TLD. Since real-time excitations are random in nature, the performance study of TLD under random excitation is also carried out in which the Bretschneider spectrum is used to generate the random input wave.
机译:调谐液体阻尼器(TLD)可以有效地控制高层结构上的风感和地震感。这项工作提出了一个数值模拟程序,以通过基于sigma变换的流固耦合求解器来研究调谐液箱结构系统的性能。为此,开发了基于“ C”的计算代码。结构方程式与流体方程式耦合,以便将晃荡力传递到结构上进行阻尼。用四阶Runge-Kutta方法求解结构方程,而使用基于有限差分的sigma变换算法求解流体方程。使用先前发布的结果验证代码。通过适当调整TLD满足耦合系统的共振条件时,可以观察到结构的最小位移。由于实时激励本质上是随机激励,因此还进行了TLD在随机激励下的性能研究,其中使用Bretschneider频谱生成了随机输入波。

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